期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
气候变化对内蒙古中部草原气候生产潜力的影响 被引量:37
1
作者 高浩 潘学标 符瑜 《中国农业气象》 CSCD 2009年第3期277-282,288,共7页
根据内蒙古中部草原各样点47a的气候数据,基于Miami和Thornthwaite Memorial气候模型,分析研究区域不同草原类型草地生产潜力和影响气候生产潜力的气候驱动力。结果显示,内蒙古中部草原的气候生产潜力由东向西表现出与地理分布和降水量... 根据内蒙古中部草原各样点47a的气候数据,基于Miami和Thornthwaite Memorial气候模型,分析研究区域不同草原类型草地生产潜力和影响气候生产潜力的气候驱动力。结果显示,内蒙古中部草原的气候生产潜力由东向西表现出与地理分布和降水量分布趋势一致的差异性,农牧交错带草地>典型草原>荒漠草原>草原化荒漠,其气候生产潜力在3000~7000kg.hm-2.a-1。研究区域的气候资源利用率在23.8%~62.3%,不同草原存在一定的差异性。分别采用草原样方取样实际产量数据、气候数据和气候生产力模型数据计算分析表明:与温度相比,降水量是影响研究区域牧草产量和气候生产潜力的主要气候驱动力,温度与降水对草原气候生产潜力都具有正效应,不同草原类型温度与降水变化对气候生产潜力的影响有差异性。温度每升高或降低1℃,草地气候生产潜力升高或降低6.75~29.07kg.hm-2.a-1,降水量每升高或降低1mm,草地气候生产潜力升高或降低0.83~1.86kg.hm-2.a-1。未来气候"干暖化"的趋势下,研究区域温度升高增加的气候生产潜力作用小于由蒸散量增加引起的减产作用,因而导致草地气候生产潜力下降,受水分限制作用越明显的草原,其气候生产潜力下降的趋势越显著。 展开更多
关键词 气候变化 内蒙古中部草原 气候生产潜力 Thornthwaite Memorial模型 Miami模型
下载PDF
新一轮草原生态补奖政策下牧户满意度影响因素的实证研究——基于内蒙古中部草原地区比较分析 被引量:2
2
作者 张静 张心灵 《黑龙江畜牧兽医》 CAS 北大核心 2020年第8期1-6,13,共7页
"十三五"期间国家实施新一轮草原生态补奖政策,深入贯彻了五个发展理念,以促进草原生态经济的快速发展。本研究从牧户视角出发,构建牧户满意度影响因素分析框架,选取内蒙古中部东乌旗、镶黄旗和四子王旗三个草原地区的280个... "十三五"期间国家实施新一轮草原生态补奖政策,深入贯彻了五个发展理念,以促进草原生态经济的快速发展。本研究从牧户视角出发,构建牧户满意度影响因素分析框架,选取内蒙古中部东乌旗、镶黄旗和四子王旗三个草原地区的280个样本数据,采用多元有序Logistic模型方法,分析新一轮草原补奖政策下不同地区牧户满意度影响因素的差异性。结果表明:内蒙古中部三个草原地区新一轮草原补奖政策满意度的影响因素存在差异性,东乌旗显著性因素有性别、年龄、教育、羊存栏量、畜牧业收入以及补贴收入;镶黄旗显著性因素有性别、家庭人数、羊存栏数、畜牧业收入、家庭支出和补贴收入;四子王旗显著性因素包括家庭人数、羊存栏数量、畜牧收入、补贴收入。针对不同地区牧户满意度的差异,笔者提出实行差异化补贴政策、拓宽牧民销售渠道和加强政府监管力度等政策建议,从而实现生态效应与经济效应共赢局面。 展开更多
关键词 牧户满意度 影响因素 有序Logistic模型 新一轮草原生态补奖政策 内蒙古中部草原地区 差异性
下载PDF
Effects of Grazing Intensity on Soil Water Regime and Flux in Inner Mongolia Grassland,China 被引量:23
3
作者 GAN Lei PENG Xin-Hua +1 位作者 S.PETH R.HORN 《Pedosphere》 SCIE CAS CSCD 2012年第2期165-177,共13页
In the past few decades, the increase in grazing intensity has led to soil degradation and desertification in Inner Mongolia grassland, China, due to population growth and shift in the socio-economic system. Two sites... In the past few decades, the increase in grazing intensity has led to soil degradation and desertification in Inner Mongolia grassland, China, due to population growth and shift in the socio-economic system. Two sites with different grazing intensities, continuous grazing site (CG) with 1.2 sheep ha-1 year-1 and heavy grazing site (HG) with 2.0 sheep ha-1 year-1, were investigated at the Inner Mongolia Grassland Ecosystem Research Station (43° 37′ 50″ N, 116° 42′ 18″ E) situated in the northern China to i) characterize the temporal distribution of soil water content along soil profile; and ii) quantify the water fluxes as affected by grazing intensity. Soil water content was monitored by time domain refiectometry (TDR) probes. Soil water retention curves were determined by pressure membrane extractor, furthermore processed by RETC (RETention Curve) software. Soil matric potential, plant available water and water flux were calculated using these data. Both sites showed an identical seasonal soil water dynamics within four defined hydraulic periods: i) wetting transition coincided with a dramatic water increase due to snow and frozen soil thawing from March to April; 2) wet summer, rainfall in accordance with plant growth from May to September; 3) drying transition, a decrease of soil water from October to November due to rainfall limit; and 4) dry winter, freezing from December to next February. Heavy grazing largely reduced soil water content by 43%-48% and plant available water by 46%-61% as compared to the CG site. During growing season net water flux was nearly similar between HG (242 mm) and CG (223 mm) sites between 5 and 20 cm depths. However, between 20 and 40 cm depths, the upward flux was more pronounced at HG site than at CG site, indicating that water was depleted by root uptake at HG site but stored at CG site. In semi-arid grassland ecosystem, grazing intensity can affect soil water regime and flux, particularly in the growing season. 展开更多
关键词 heavy grazing plant available water semi-arid grassland soil matric potential soil water content
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部